Rigetti's 84-qubit Ankaa-3 system
Ankaa-3 is Rigetti's newest flagship quantum computer featuring an extensive hardware redesign that enables superior performance. Enhancements across the technology stack include a new cryogenic hardware design, an overhaul of the qubit circuit layout, precise qubit frequency targeting with Alternating-Bias Assisted Annealing, and flexible gate architecture with precise controls. Photo Credit: Drew Bird Photography
Ankaa-3 features a broad hardware redesign enabling superior performance. Enhancements across the technology stack include a new cryogenic hardware design, an overhaul of the qubit circuit layout, precise qubit frequency targeting with Alternating-Bias Assisted Annealing, and flexible gate architecture with precise controls. Ankaa-3 has achieved a 99.5% median two-qubit gate fidelity.
BERKELEY, Calif., Dec. 23, 2024 (GLOBE NEWSWIRE) -- Rigetti Computing, Inc. (Nasdaq: RGTI) ("Rigetti" or the "Company"), a pioneer in full-stack quantum-classical computing, announced today the public launch of its 84-qubit Ankaa-3 system. Ankaa-3 is Rigetti's newest flagship quantum computer featuring an extensive hardware redesign that enables superior performance. Rigetti also celebrates major two-qubit gate fidelity milestones with Ankaa-3: successfully halving error rates in 2024 to achieve a median 99.0% iSWAP gate fidelity, as well as demonstrating 99.5% median fidelity fSim gates.
Ankaa-3 is now available to its partners via the Rigetti Quantum Cloud Services platform (QCS) and will be coming to Amazon Braket and Microsoft Azure in the first quarter of 2025. Users will be able to operate these higher fidelity and universal iSWAP gates for a wide range of algorithmic research, with a median gate time of 72 nanoseconds. The faster (median 56 nanoseconds), more specialized fSim gates are useful for specific algorithms such as random circuit sampling, as recently demonstrated on Google's Willow system.
The Ankaa-3 system continues to feature Rigetti's scalable, industry-leading chip architecture with 3D signal delivery while incorporating major enhancements to key technologies. Leveraging the Company's full-stack expertise and in-house quantum foundry capabilities, Ankaa-3 demonstrates Rigetti's ability to deliver increasingly higher performance quantum computers.
The Company's focus on improving qubit fidelity has resulted in enhancements across the technology stack:
All new cryogenic hardware design - Reducing the amount of metal at the refrigerator's coldest stage increases efficiency and reduces the cost per qubit. Superior thermalization and magnetic/environmental shielding also improves system performance. This new design enables scaling up to thousands of qubits.
Improved qubit chip - Rigetti overhauled its qubit chip, leading to improved coherence. Through its collaboration with the Superconducting Quantum Materials & Systems Center (SQMS) led by Fermilab, Rigetti implemented a metal deposition method for qubit circuitry with a higher T1 baseline -- which indicates the lifetime of a qubit. Additionally, the circuit layout was optimized to minimize qubit losses and take advantage of the new higher-coherence process.
Josephson junction fabrication with Alternating-Bias Assisted Annealing (ABAA) - The Ankaa-3 chip features the hallmarks of Rigetti's Ankaa-class chip architecture with a square lattice of qubits and tunable couplers. The 84-qubit chip's Josephson junctions are manufactured using Rigetti's novel ABAA technique. ABAA allows for precise qubit frequency targeting, which enables better execution of two-qubit gates and increases in yield, both of which contribute to higher fidelity.
Precise control and flexible gate architecture - Rigetti has invested heavily in the control technologies underpinning its QPUs. Chip-wide optimization of qubit and tunable coupler frequencies produces fewer unwanted qubit-qubit interactions, and real-time, in-hardware pulse pre-compensation produces gates with lower incoherent errors. Rigetti has also developed a robust calibration process for highly expressive square-root-iSWAP-like gates while solving some of the compilation challenges associated with their practical usage, resulting in an nQA-oriented gate set with significantly lower error rates.
"With approximately $225 million of cash, cash equivalents and available for sale investments and no debt, we are extremely confident in our ability to deliver on our roadmap and performance goals. The remarkable performance of Ankaa-3 reinforces our leadership in the superconducting quantum computing field -- which we believe is the winning modality for high-performance quantum computers due to their many advantages, including fast gate speeds and well-established manufacturing processes," says Dr. Subodh Kulkarni, Rigetti CEO.
"Our teams, across the technology stack, work incredibly hard to introduce new, innovative ways to increase our system's performance. As we continue the journey towards fault tolerance, we are constructing computing systems with capabilities that have not been seen before," says David Rivas, Rigetti CTO. "At Rigetti, working closely with our partners, we are committed to finding ways to put those systems to practical use."
Rigetti plans to introduce the next generation of its modular system architecture, while continuing to increase fidelities, in 2025. By mid-year 2025, the Company expects to release a 36-qubit system based on four 9-qubit chips tiled together, with a targeted 2x reduction in error rates from the current level. By the end of 2025, the Company expects to release a system with over 100 qubits with a targeted 2x reduction in error rates from the current level.
About Rigetti
Rigetti is a pioneer in full-stack quantum computing. The Company has operated quantum computers over the cloud since 2017 and serves global enterprise, government, and research clients through its Rigetti Quantum Cloud Services platform. In 2021, Rigetti began selling on-premises quantum computing systems with qubit counts between 24 and 84 qubits, supporting national laboratories and quantum computing centers. Rigetti's 9-qubit Novera QPU was introduced in 2023 supporting a broader R&D community with a high-performance, on-premises QPU designed to plug into a customer's existing cryogenic and control systems. The Company's proprietary quantum-classical infrastructure provides high-performance integration with public and private clouds for practical quantum computing. Rigetti has developed the industry's first multi-chip quantum processor for scalable quantum computing systems. The Company designs and manufactures its chips in-house at Fab-1, the industry's first dedicated and integrated quantum device manufacturing facility.
Rigetti 的 84 量子位 Ankaa-3 系統
Ankaa-3 是 Rigetti 最新的旗艦量子計算機,它進行了廣泛的硬件重新設計,可實現卓越的性能。整個技術堆棧的增強包括新的低溫硬件設計、量子比特電路佈局的全面改革、通過交替偏壓輔助退火實現精確的量子比特頻率目標以及具有精確控制的靈活門架構。照片來源:德魯·伯德攝影
Ankaa-3 採用了廣泛的硬件重新設計,可實現卓越的性能。整個技術堆棧的增強包括新的低溫硬件設計、量子比特電路佈局的全面改革、通過交替偏壓輔助退火實現精確的量子比特頻率目標以及具有精確控制的靈活門架構。Ankaa-3的兩量子比特門保真度中位數達到了99.5%。
加利福尼亞州伯克利,2024年12月23日(GLOBE NEWSWIRE)——全棧量子經典計算領域的先驅Rigetti Computing, Inc.(納斯達克股票代碼:RGTI)(「Rigetti」 或 「公司」)今天宣佈公開發行其84量子比特的Ankaa-3系統。Ankaa-3 是 Rigetti 最新的旗艦量子計算機,它進行了廣泛的硬件重新設計,可實現卓越的性能。Rigetti還通過Ankaa-3慶祝了重要的兩量子比特門保真度里程碑:在2024年成功將誤差率減半,實現了iSwap門保真度中位數爲99.0%,並展示了fSIM門保真度中位數爲99.5%。
Ankaa-3現已通過Rigetti Quantum Cloud Services平台(QCS)提供給其合作伙伴,並將於2025年第一季度在亞馬遜Braket和微軟Azure上市。用戶將能夠操作這些更高的保真度和通用的iSwap門以進行廣泛的算法研究,中位門時間爲72納秒。正如最近在谷歌的Willow系統上演示的那樣,速度更快(中位數爲56納秒)、更專業的fSIM門對於諸如隨機電路採樣之類的特定算法非常有用。
Ankaa-3 系統繼續採用 Rigetti 的可擴展、行業領先的芯片架構,具有 3D 信號傳輸功能,同時對關鍵技術進行了重大改進。利用公司的全棧專業知識和內部量子鑄造能力,Ankaa-3展示了Rigetti提供越來越高性能的量子計算機的能力。
該公司專注於提高量子比特保真度,從而增強了整個技術堆棧的性能:
全新的低溫硬件設計-減少冰箱最冷階段的金屬含量,可提高效率並降低每個量子比特的成本。卓越的散熱和磁/環境屏蔽也提高了系統性能。這種新設計可以擴展到數千個量子比特。
改進的量子比特芯片——Rigetti徹底改革了其量子比特芯片,從而提高了連貫性。通過與費米實驗室領導的超導量子材料與系統中心(SQMS)的合作,Rigetti爲量子比特電路實現了一種金屬沉積方法,該方法具有更高的T1基線,這表明了量子比特的壽命。此外,對電路佈局進行了優化,以最大限度地減少量子比特損耗並利用新的更高一致性工藝。
使用交替偏置輔助退火(ABAA)製造約瑟夫森結——Ankaa-3芯片具有Rigetti的Ankaa級芯片架構的特點,具有量子比特的方格和可調耦合器。84 量子位芯片的約瑟夫森連接是使用 Rigetti 的新型 ABAA 技術製造的。ABAA 允許精確的量子比特頻率定位,從而可以更好地執行雙量子比特門並提高產量,這兩者都有助於提高保真度。
精確的控制和靈活的門控架構-Rigetti 在支撐其 QPU 的控制技術上投入了大量資金。量子比特和可調耦合器頻率的芯片範圍優化可減少不必要的量子比特-量子比特交互,而實時、硬件內脈衝預補償產生的門極不相干誤差更低。Rigetti 還針對表現力極強的 square-root iSwap 門開發了一種強大的校準流程,同時解決了與實際使用有關的一些編譯難題,從而產生了以NQA爲導向的門集,錯誤率明顯降低。
“我們擁有約2.25億美元的現金、現金等價物和可供出售的投資,沒有債務,我們對實現路線圖和績效目標的能力充滿信心。Rigetti首席執行官蘇博德·庫爾卡尼博士說,Ankaa-3的出色性能鞏固了我們在超導量子計算領域的領導地位——我們認爲這是高性能量子計算機的制勝方式,因爲它們具有許多優勢,包括快速的門速度和完善的製造工藝。
「我們的團隊在整個技術堆棧中都非常努力地推出新的創新方法來提高我們系統的性能。在我們繼續走向容錯之旅的過程中,我們正在構建具有前所未有功能的計算系統。」 Rigetti首席技術官戴維·裏瓦斯說。「在Rigetti,我們與合作伙伴密切合作,致力於尋找將這些系統付諸實踐的方法。」
Rigetti計劃在2025年推出下一代模塊化系統架構,同時繼續提高保真度。到2025年年中,該公司預計將發佈基於四個9量子位芯片拼接在一起的36量子位系統,目標是將錯誤率從當前水平降低2倍。到2025年底,該公司預計將發佈一個超過100個量子比特的系統,目標是將錯誤率從當前水平降低2倍。
關於 Rigetti
Rigetti 是全棧量子計算的先驅。該公司自2017年以來一直在雲端運營量子計算機,並通過其Rigetti Quantum雲服務平台爲全球企業、政府和研究客戶提供服務。2021 年,Rigetti 開始銷售量子比特數在 24 到 84 個量子比特之間的本地量子計算系統,爲國家實驗室和量子計算中心提供支持。Rigetti 的 9 量子位 Novera QPU 於 2023 年推出,其高性能本地 QPU 旨在連接客戶現有的低溫和控制系統,爲更廣泛的研發社區提供支持。該公司專有的量子經典基礎設施爲實用量子計算提供了與公有云和私有云的高性能集成。Rigetti 開發了業界首款用於可擴展量子計算系統的多芯片量子處理器。該公司在Fab-1內部設計和製造芯片,這是業界第一個專用的集成量子器件製造工廠。